Choi Woojhon, Baumann Bernhard, Liu Jonathan J, Clermont Allen C, Feener Edward P, Duker Jay S, Fujimoto James G
Biomed Opt Express. 2012 May 1;3(5):1047-61. doi: 10.1364/BOE.3.001047. Epub 2012 Apr 19.
We present an approach to measure pulsatile total retinal arterial blood flow in humans and rats using ultrahigh speed Doppler OCT. The axial blood velocity is measured in an en face plane by raster scanning and the flow is calculated by integrating over the vessel area, without the need to measure the Doppler angle. By measuring flow at the central retinal artery, the scan area can be very small. Combined with ultrahigh speed, this approach enables high volume acquisition rates necessary for pulsatile total flow measurement without modification in the OCT system optics. A spectral domain OCT system at 840nm with an axial scan rate of 244kHz was used for this study. At 244kHz the nominal axial velocity range that could be measured without phase wrapping was ±37.7mm/s. By repeatedly scanning a small area centered at the central retinal artery with high volume acquisition rates, pulsatile flow characteristics, such as systolic, diastolic, and mean total flow values, were measured. Real-time Doppler C-scan preview is proposed as a guidance tool to enable quick and easy alignment necessary for large scale studies. Data processing for flow calculation can be entirely automatic using this approach because of the simple and robust algorithm. Due to the rapid volume acquisition rate and the fact that the measurement is independent of Doppler angle, this approach is inherently less sensitive to involuntary eye motion. This method should be useful for investigation of small animal models of ocular diseases as well as total blood flow measurements in human patients in the clinic.
我们提出了一种使用超高速多普勒光学相干断层扫描(OCT)测量人类和大鼠视网膜总动脉搏动血流的方法。通过光栅扫描在一个正面平面中测量轴向血流速度,并通过在血管区域上积分来计算血流,无需测量多普勒角度。通过测量视网膜中央动脉处的血流,扫描区域可以非常小。结合超高速特性,这种方法能够实现搏动总血流测量所需的高采集率,而无需对OCT系统光学部件进行修改。本研究使用了一台波长为840nm、轴向扫描速率为244kHz的谱域OCT系统。在244kHz时,无需相位展开即可测量的标称轴向速度范围为±37.7mm/s。通过以高采集率重复扫描以视网膜中央动脉为中心的小区域,测量了搏动血流特征,如收缩期、舒张期和平均总血流值。提出了实时多普勒C扫描预览作为一种引导工具,以便在大规模研究中实现快速且容易的对准。由于算法简单且稳健,使用这种方法进行血流计算的数据处理可以完全自动化。由于快速的容积采集率以及测量与多普勒角度无关这一事实,这种方法本质上对非自愿眼球运动不太敏感。该方法对于眼科疾病小动物模型的研究以及临床中人类患者的总血流测量应该是有用的。